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A Two-Scale Computational Model of pH-Sensitive Expansive Porous Media

机译:pH敏感膨胀多孔介质的两尺度计算模型

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摘要

We propose a new two-scale model to compute the swelling pressure in colloidal systems with microstructure sensitive to pH changes from an outer bulk fluid in thermodynamic equilibrium with the electrolyte solution in the nanopores. The model is based on establishing the microscopic pore scale governing equations for a biphasic porous medium composed of surface charged macromolecules saturated by the aqueous electrolyte solution containing four monovalent ions (Na+, Cl-, H+, OH-). Ion exchange reactions occur at the surface of the particles leading to a pH-dependent surface charge density, giving rise to a nonlinear Neumann condition for the Poisson–Boltzmann problem for the electric double layer potential. The homogenization procedure, based on formal matched asymptotic expansions, is applied to up-scale the pore-scale model to the macroscale. Modified forms of Terzaghi's effective stress principle and mass balance of the solid phase, including a disjoining stress tensor and electrochemical compressibility, are rigorously derived from the upscaling procedure. New constitutive laws are constructed for these quantities incorporating the pH-dependency. The two-scale model is discretized by the finite element method and applied to numerically simulate a free swelling experiment induced by chemical stimulation of the external bulk solution.
机译:我们提出了一个新的两尺度模型来计算胶体系统中的溶胀压力,该胶体系统的微结构对纳米流体中电解质溶液的热力学平衡中的外部体积流体的pH变化敏感。该模型基于建立双相多孔介质的微观孔隙尺度控制方程,该方程由表面带电的大分子组成,该表面电荷被含四个单价离子(Na + ,Cl -,H + ,OH -)。离子交换反应发生在颗粒表面,导致pH值依赖的表面电荷密度,从而导致电双层电位的Poisson-Boltzmann问题出现非线性诺伊曼条件。基于形式匹配渐近展开的均质化程序被用于将孔隙尺度模型放大到宏观尺度。 Terzaghi有效应力原理和固相质量平衡的修改形式,包括分离的应力张量和电化学可压缩性,均严格地从放大程序中得出。针对这些数量构造了新的本构定律,并结合了pH依赖性。该两尺度模型通过有限元方法离散化,并用于数值模拟由外部本体溶液的化学刺激引起的自由溶胀实验。

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